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Robust startup control of sensorless PMSM drives with self-commissioning

机译:具有自我调试功能的无传感器PMSM驱动器的强大启动控制

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This paper presents a robust sensorless startup control method with self-commissioning for permanent magnet motors for smooth ramping speed up without reversing oscillations. Low cost sinusoidal PMSM motors used for fan and blower applications may have large parameter variations and static friction uncertainties. A reliable startup control with smooth operation thus becomes an indispensable requirement for practical applications. A self-commissioning strategy is developed to identify the fan motor parameters when a new application is initiated. These identified parameters are stored in an EEPROM and are used for the field oriented sensorless control of the of the PMSM motor drive. Based on the identified motor parameters, a start-up scheme will apply a series of voltage pulses with proper time durations to each stator winding and the corresponding peak currents are measured for the detection of initial commutation state of the rotor. The proposed scheme will not cause visible rotor vibrations and audio noises during the detection process. The sensorless startup with self-commissioning scheme has been implemented based on a single-chip MCU controller (STM32F0). Experimental results reveal that the proposed scheme can achieve reliable and smooth startup with robust performances.
机译:本文提出了一种具有自调试功能的鲁棒性无传感器启动控制方法,用于永磁电动机,以平滑地加速加速而不会反转振荡。用于风扇和鼓风机应用的低成本正弦波PMSM电动机可能具有较大的参数变化和静摩擦不确定性。因此,可靠的启动控制和平稳的操作成为实际应用中必不可少的要求。开发了一种自我调试策略,以在启动新应用程序时识别风扇电机参数。这些识别出的参数存储在EEPROM中,并用于PMSM电动机驱动器的无磁场定向控制。基于识别出的电动机参数,启动方案将在每个定子绕组上施加一系列具有适当持续时间的电压脉冲,并测量相应的峰值电流以检测转子的初始换向状态。所提出的方案在检测过程中不会引起可见的转子振动和音频噪声。具有自我调试方案的无传感器启动已基于单片机MCU控制器(STM32F0)实现。实验结果表明,该方案可以实现可靠,平稳的启动,性能稳定。

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